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Ultra-long palladium nanoworms by polymer grafts

机译:高分子接枝超长钯纳米蠕虫

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Abstract Chemically and morphologically stable, non-aggregating palladium nanoworms with diameters of 2 nm and lengths of up to 10 nm with a graft-to polystyrene shell were synthesized in a straight-forward one-phase system, and proof for the mechanism of formation is presented. The synthesis has been achieved by the application of ω-2,2′-bipyridyl-polystyrene as stabilizer, which led to a “graft-to” structure of palladium nanoworms with polystyrene shell. The nanoworms have been characterized by TEM, XRD, and coupled GPC-UV/Vis measurement. It was possible to show that the formation of nanoworms proceeds by agglomeration of spherical palladium nanoparticles. This mechanism was transferred to ω-thiol-polystyrene as stabilizer, which results in either spherical nanoparticles (low ratio Pd:Polymer, <2 nm diameter) or high aspect ratio nanoworms (high ratio Pd:Polymer, up to 10 × 120 nm), proving that the formation of palladium nanoworms was not exclusive for pyridine/amine-based ligands.
机译:摘要在简单的一相体系中合成了化学和形态稳定,直径为2 nm,长度最大为10 nm且接枝到聚苯乙烯壳上的非聚集钯纳米蠕虫,为形成机理提供了证据。提出了。通过使用ω-2,2'-联吡啶基-聚苯乙烯作为稳定剂可以实现合成,这导致带有聚苯乙烯壳的钯纳米蠕虫的“嫁接”结构。通过TEM,XRD和耦合GPC-UV / Vis测量对纳米蠕虫进行了表征。可能显示出纳米蠕虫的形成是通过球形钯纳米颗粒的团聚而进行的。该机理被转移至作为稳定剂的ω-硫醇-聚苯乙烯,产生球形纳米颗粒(低比例Pd:聚合物,直径小于2 nm)或高长径比纳米蠕虫(高比例Pd:聚合物,最大10×120 nm)。证明钯纳米蠕虫的形成并非仅基于吡啶/胺基配体。

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